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Characterization of a New Dry Drill-Milling Process of Carbon Fibre Reinforced Polymer Laminates

机译:碳纤维增强聚合物层压板的新型干钻铣削工艺的特性

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摘要

Carbon Fibre Reinforced Polymer (CFRP) composites are widely used in aerospace applications that require severe quality parameters. To simplify the assembly operations and reduce the associated costs, the current trend in industry is to optimize the drilling processes. However, the machining of CFRP composites is very challenging compared with metals, and several defect types can be generated by drilling. The emerging process of orbital drilling can greatly reduce the defects associated with the traditional drilling of CFRP, but it is a more complex process requiring careful process parameters selection and it does not allow for the complete elimination of the thrust force responsible for delamination damage. As an alternative to traditional and orbital drilling, this work presents a new hole making process, where the hole is realized by a combination of drilling and peripheral milling performed using the same cutting tool following a novel tool path strategy. An original tool design principle is proposed to realize a new drill-milling tool, made of a first drilling and a subsequent milling portion. Two different tool configurations are experimentally tested to evaluate the performance of the newly-conceived combined drill-milling process. This process is quick and easy, and the experimental results show an improvement in the drilled hole quality.
机译:碳纤维增强聚合物(CFRP)复合材料广泛用于要求严格质量参数的航空航天应用。为了简化组装操作并降低相关成本,当前的工业趋势是优化钻孔工艺。但是,与金属相比,CFRP复合材料的加工非常具有挑战性,并且钻孔可能会产生几种缺陷类型。轨道钻孔的新兴过程可以大大减少与CFRP的传统钻孔相关的缺陷,但是这是一个更为复杂的过程,需要仔细选择过程参数,并且不能完全消除造成分层破坏的推力。作为传统和轨道钻孔的替代方法,这项工作提出了一种新的制孔工艺,其中,通过采用新颖的刀具路径策略,使用相同的切削刀具进行钻孔和外围铣削相结合,可以实现钻孔。提出了一种原始的工具设计原理来实现一种新的钻铣刀,该钻铣刀由第一次钻孔和随后的铣削部分组成。对两种不同的刀具配置进行了实验测试,以评估新构思的组合式钻铣加工过程的性能。此过程快速简便,实验结果表明,钻孔质量得到了改善。

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